AutoRestTest-TrackA / baseline /request_generator.py
minhhungg's picture
feat: initial upload for AutoRestTest Track A datasets
6c50d1f
Raw
History Blame Contribute Delete
16.9 kB
import os
import random
import time
from dataclasses import dataclass
from typing import List, Dict
import argparse
import threading
import requests
import json
from config import DEV_SERVER_ADDRESS
from specification_parser import SpecificationParser, ItemProperties, ParameterProperties, OperationProperties
from randomizer import RandomizedSelector
@dataclass
class RequestData:
endpoint_path: str
http_method: str
parameters: Dict[str, any]
request_body: any
content_type: str
operation_id: str
@dataclass
class RequestResponse:
request: RequestData
response: requests.Response
response_text: str
@dataclass
class StatusCode:
status_code: int
count: int
requests_and_responses: List[RequestResponse]
class RequestsGenerator:
def __init__(self, file_path: str, api_url: str, is_local: bool = True, time_duration=600):
self.file_path = file_path
self.api_url = api_url
self.successful_query_data: List[RequestData] = [] # list that will store successfuly query_parameters
self.status_codes: Dict[int: StatusCode] = {} # dictionary to track status code occurrences
self.specification_parser: SpecificationParser = SpecificationParser(self.file_path)
self.operations: Dict[str, OperationProperties] = self.specification_parser.parse_specification()
self.is_local = is_local
self.time_duration = time_duration
self.requests_generated = 0
self.start_time = None
def get_simple_type(self, variable):
"""
Returns a simplified type name as a string for common Python data types.
"""
type_mapping = {
int: "integer",
float: "float",
str: "string",
list: "array",
dict: "object",
tuple: "tuple",
set: "set",
bool: "boolean",
type(None): "null"
}
var_type = type(variable)
return type_mapping.get(var_type, str(var_type))
def determine_composite_items(self, item_properties: ItemProperties, curr_value) -> ItemProperties:
if item_properties.type == "array" and len(curr_value) > 0:
item_properties.items = ItemProperties(
type=self.get_simple_type(curr_value[0])
)
elif item_properties.type == "object":
item_properties.properties = {}
for key, value in curr_value.items():
item_properties.properties[key] = ItemProperties(
type=self.get_simple_type(value)
)
return item_properties
def create_operation_for_mutation(self, query_value: RequestData, operation_properties: OperationProperties) -> OperationProperties:
"""
Create a new operation for mutation
"""
if query_value.request_body and operation_properties.request_body_properties:
for content_type, request_body_properties in operation_properties.request_body_properties.items():
request_body_properties = ItemProperties(
type=self.get_simple_type(query_value.request_body)
)
request_body_properties = self.determine_composite_items(request_body_properties, query_value.request_body)
operation_properties.request_body_properties[content_type] = request_body_properties
endpoint_path = operation_properties.endpoint_path
for parameter_name, parameter_properties in operation_properties.parameters.items():
if parameter_properties.in_value == "path":
manual_randomizer = RandomizedSelector(operation_properties.parameters, query_value.request_body)
operation_properties.endpoint_path = endpoint_path.replace(
"{" + parameter_name + "}", str(manual_randomizer.randomize_item(parameter_properties.schema)))
operation_properties.parameters = {}
if query_value.parameters:
for parameter_name, parameter_value in query_value.parameters.items():
parameter_properties = ParameterProperties(
name=parameter_name,
in_value="query",
schema=ItemProperties(
type=self.get_simple_type(parameter_value)
)
)
parameter_properties.schema = self.determine_composite_items(parameter_properties.schema, parameter_value)
operation_properties.parameters[parameter_name] = parameter_properties
return operation_properties
def mutate_requests(self):
"""
Mutate valid queries for further testing
"""
print("Mutating Requests...")
curr_success_queries = self.successful_query_data.copy()
for query in curr_success_queries:
print("Time Elapsed: ", time.time() - self.start_time)
print("Time Remaining: ", self.time_duration - (time.time() - self.start_time))
print("Requests Sent: ", self.requests_generated)
print("========================================")
curr_id = query.operation_id
operation_details = self.operations.get(curr_id)
if operation_details is not None:
new_operation: OperationProperties = operation_details
new_operation = self.create_operation_for_mutation(query, new_operation)
self.process_operation(new_operation)
if (time.time() - self.start_time) > self.time_duration:
break
def process_response(self, response: requests.Response, request_data: RequestData):
"""
Process the response from the API.
"""
if response is None:
return
self.requests_generated += 1
# print(response.text)
request_and_response = RequestResponse(
request=request_data,
response=response,
response_text=response.text
)
if response.status_code not in self.status_codes:
self.status_codes[response.status_code] = StatusCode(
status_code=response.status_code,
count=1,
requests_and_responses=[request_and_response],
)
else:
self.status_codes[response.status_code].count += 1
self.status_codes[response.status_code].requests_and_responses.append(request_and_response)
if response.status_code // 100 == 2:
self.successful_query_data.append(request_data)
def attempt_retry(self, response: requests.Response, request_data: RequestData):
"""
Attempt retrying request with old query parameters
"""
if response is None or response.status_code // 100 == 2:
return
retries = 1
indices = list(range(len(self.successful_query_data)))
random.shuffle(indices)
for i in indices:
if response is None or (200 <= response.status_code < 300) or retries > 5:
break
old_request = self.successful_query_data[i]
if old_request.http_method in {"put", "post"}:
new_params = old_request.request_body
if new_params is not type(dict):
new_params = {"request_body": old_request.request_body}
new_request = RequestData(
endpoint_path=request_data.endpoint_path,
http_method=request_data.http_method,
parameters=new_params, # use old request body as new query parameters to check for producer-consumer dependency
# NEED TO CHECK THAT REQUEST_BODY ISN'T JUST STRING
request_body=old_request.request_body,
content_type=old_request.content_type,
operation_id=request_data.operation_id
)
response = self.send_request(new_request)
self.process_response(response, new_request)
retries += 1
return
def send_request(self, request_data: RequestData) -> requests.Response:
"""
Send the request to the API.
"""
endpoint_path = request_data.endpoint_path
http_method = request_data.http_method
query_parameters = request_data.parameters
request_body = request_data.request_body
content_type = request_data.content_type
try:
select_method = getattr(requests, http_method)
if http_method in {"put", "post"}:
#if content_type == "json":
response = select_method(f"{self.api_url}{endpoint_path}", params=query_parameters, json=json.dumps(request_body))
#else:
# print("Request Body: ", request_body)
# response = select_method(self.api_url + endpoint_path, params=query_parameters, data=request_body)
# FORM DATA ERRORING ATM
else:
response = select_method(f"{self.api_url}{endpoint_path}", params=query_parameters)
except requests.exceptions.RequestException as err:
#print("Request failed due to error: ", err)
print("Request failed due to error: ", str(err)[:400])
print("Endpoint Path: ", endpoint_path)
print("Params: ", query_parameters)
return None
except Exception as err:
print("Request failed due to error: ", str(err)[:400])
print("Endpoint Path: ", endpoint_path)
print("Params: ", query_parameters)
return None
return response
def randomize_values(self, parameters: Dict[str, ParameterProperties], request_body) -> (Dict[str, any], any):
# create randomize object here and return after Object.randomize_parameters() and Object.randomize_request_body() is called
# do randomize parameter selection, then randomize the values for both parameters and request_body
randomizer = RandomizedSelector(parameters, request_body)
return randomizer.randomize_parameters() if parameters else None, randomizer.randomize_request_body() if request_body else None
def process_operation(self, operation_properties: OperationProperties):
"""
Process the operation properties to generate the request.
"""
endpoint_path = operation_properties.endpoint_path
http_method = operation_properties.http_method
request_body = None
content_type = None
if operation_properties.request_body:
for content_type_value, request_body_properties in operation_properties.request_body_properties.items():
content_type = content_type_value.replace("application/", "")
request_body = request_body_properties
query_parameters, request_body = self.randomize_values(operation_properties.parameters, request_body)
for parameter_name, parameter_properties in operation_properties.parameters.items():
if parameter_properties.in_value == "path":
manual_randomizer = RandomizedSelector(operation_properties.parameters, request_body)
endpoint_path = endpoint_path.replace("{" + parameter_name + "}", str(manual_randomizer.randomize_item(parameter_properties.schema)))
request_data = RequestData(
endpoint_path=endpoint_path,
http_method=http_method,
parameters=query_parameters,
request_body=request_body,
content_type=content_type,
operation_id=operation_properties.operation_id
)
#print("Request Sent")
response = self.send_request(request_data)
if response is not None:
self.process_response(response, request_data)
self.attempt_retry(response, request_data)
def requests_generate(self):
"""
Generate the randomized requests based on the specification file.
"""
print("Generating Request...")
print()
if not self.is_local:
num_workers = 5
worker_queues = [[] for i in range(num_workers)]
for i, (operation_id, operation_properties) in enumerate(self.operations.items()):
worker_queues[i % num_workers].append((operation_id, operation_properties))
workers = []
for i in range(num_workers):
worker = threading.Thread(target=self.process_operation, args=(worker_queues[i],))
workers.append(worker)
worker.start()
for worker in workers:
worker.join()
else:
self.start_time = time.time()
while (time.time() - self.start_time) < self.time_duration:
for operation_id, operation_properties in self.operations.items():
print("Time Elapsed: ", time.time() - self.start_time)
print("Time Remaining: ", self.time_duration - (time.time() - self.start_time))
print("Requests Sent: ", self.requests_generated)
print("========================================")
for _ in range(1):
self.process_operation(operation_properties)
if (time.time() - self.start_time) > self.time_duration:
break
self.mutate_requests()
print("Generated Requests!")
def output_responses(request_generator: RequestsGenerator, service_name: str):
"""
Output the responses to a file.
"""
directory = "./testing_output/baseline-logs/"
if not os.path.exists(directory):
os.makedirs(directory)
with open(f"./testing_output/baseline-logs/{service_name}.txt", "w") as file:
file.write(f"BASELINE OUTPUT FOR {service_name}\n")
for status_code, status_code_data in request_generator.status_codes.items():
file.write("========================================\n")
file.write(f"Status Code Category: {status_code}\n")
file.write(f"Count: {status_code_data.count}\n")
file.write("----------------------------------------\n")
for request_response in status_code_data.requests_and_responses:
file.write(f"Endpoint Path: {request_response.request.endpoint_path}\n")
file.write(f"Request Parameters: {request_response.request.similar_parameters}\n")
file.write(f"Request Body: {request_response.request.request_body}\n")
file.write(f"Status Code: {request_response.response.status_code}\n")
file.write(f"Response Text: {request_response.response_text}\n")
file.write("\n")
def argument_parse() -> (str, str):
service_urls = {
'fdic': "http://0.0.0.0:9001",
'genome-nexus': "http://0.0.0.0:9002",
'language-tool': "http://0.0.0.0:9003",
'ocvn': "http://0.0.0.0:9004",
'ohsome': "http://0.0.0.0:9005",
'omdb': "http://0.0.0.0:9006",
'rest-countries': "http://0.0.0.0:9007",
'spotify': "http://0.0.0.0:9008",
'youtube': "http://0.0.0.0:9009"
}
parser = argparse.ArgumentParser(description='Generate requests based on API specification.')
parser.add_argument('service', help='The service specification to use.')
parser.add_argument('is_local', help='Whether the services are loaded locally or not.')
parser.add_argument('time_duration', help='The time duration to run the tests for.')
args = parser.parse_args()
api_url = service_urls.get(args.service)
is_local = args.is_local
time_duration = float(args.time_duration)
if api_url is None:
print(f"Service '{args.service}' not recognized. Available services are: {list(service_urls.keys())}")
exit(1)
if is_local not in {"true", "false"}:
print(f"Invalid value for 'is_local'. Must be either 'true' or 'false'.")
exit(1)
if is_local == "false":
api_url = api_url.replace("0.0.0.0", DEV_SERVER_ADDRESS) # use config.py for DEV_SERVER_ADDRESS var
api_url = api_url.replace(":9", ":8") # use public server proxy ports
return args.service, api_url, time_duration
#testing code
if __name__ == "__main__":
service_name, api_url, time_duration = argument_parse()
file_path = f"../specs/original/oas/{service_name}.yaml"
print("Checking requests at: ", api_url)
request_generator = RequestsGenerator(file_path=file_path, api_url=api_url, is_local=True, time_duration=time_duration)
for i in range(1):
request_generator.requests_generate()
print([(x.status_code, x.count) for x in request_generator.status_codes.values()])
output_responses(request_generator, service_name)